Background: Telomerase (human telomerase reverse transcriptase (hTERT) is considered a hallmark of cancer, being active in cancer cells but repressed in human somatic cells. As such, it has the potential to serve as a valid cancer biomarker. Exosomal hTERT mRNA can be detected in the serum of patients with solid malignancies but not in healthy individuals. We sought to evaluate the feasibility of measuring serum exosomal hTERT transcripts levels in patients with lung cancer. Methods: A prospective analysis of exosomal hTERT mRNA levels was determined in serum-derived exosomes from 76 patients with stage III-IV lung cancer (11 SCLC and 65 NSCLC). An hTERT level above RQ = 1.2 was considered "detectable" according to a previous receiver operating characteristic curve (ROC) curve. Sequential measurements were obtained in 33 patients. Demographic and clinical data were collected retrospectively from patients' charts. Data on response to systemic therapy (chemotherapy, immunotherapy, and tyrosine kinase inhibitors) were collected by the treating physicians. Results: hTERT was detected in 53% (40/76) of patients with lung cancer (89% of SCLC and 46% of NSLCC). The mean hTERT levels were 3.7 in all 76 patients, 5.87 in SCLC patients, and 3.62 in NSCLC patients. In total, 25 of 43 patients with sequential measurements had detectable levels of hTERT. The sequential exosomal hTERT mRNA levels reflected the clinical course in 23 of them. Decreases in hTERT levels were detected in 17 and 5 patients with partial and complete response, respectively. Eleven patients with a progressive disease had an increase in the level of exosomal hTERT, and seven with stable disease presented increases in its exosomal levels. Another patient who progressed on the first line of treatment and had a partial response to the second line of treatment exhibited an increase in exosomal hTERT mRNA levels during the progression and a decrease during the response. Conclusions: Exosomal hTERT mRNA levels are elevated in over half of patients with lung cancer. The potential association between hTERT levels and response to therapy suggests its utility as a promising cancer biomarker for response to therapy. This issue should be further explored in future studies.
Central nervous system (CNS) metastases occur frequently in oncogene-driven non-small cell lung cancer (NSCLC). Standard treatment approaches can potentially delay systemic treatment (surgical intervention) or result in neurocognitive impairment (radiotherapy). Recently, next-generation tyrosine kinase inhibitors (TKIs) have demonstrated remarkable intracranial activity. However, most clinical trials did not enroll patients suffering neurological symptoms. Our study aimed to assess the CNS activity of targeted therapies in this patient population. We present a case series of nine NSCLC patients with either EGFR mutation or ALK rearrangement and symptomatic CNS metastases that were treated with TKIs. Clinicopathological characteristics, treatment, and outcomes were analyzed. Most patients presented with symptomatic CNS metastases at time of metastatic disease presentation (6/9). Additionally, the majority of patients had leptomeningeal disease (6/9) and multiple parenchymal metastases. Patients presented with a variety of CNS symptoms with the most common being nausea, vomiting, headache, and confusion. Most patients (6/9) responded rapidly both clinically and radiographically to the targeted treatment, with a marked correlation between systemic and intracranial radiographic response. In conclusion, upfront use of next-generation TKIs in patients with oncogene-driven NSCLC with symptomatic CNS metastases is associated with reasonable intracranial activity and represents a valuable treatment option.
There are scarce data on venous thromboembolism (VTE) rates among non-small cell lung cancer (NSCLC) patients treated with immune-checkpoint inhibitors (ICI). The Khorana Score (KS), used to guide thromboprophylaxis in cancer patients, was validated in patients receiving chemotherapy.To assess VTE rates and KS performance among NSCLC patients treated with ICI or chemotherapy.We performed a retrospective cohort study of NSCLC patients starting either ICI or platinum-based chemotherapy. The 6-month cumulative incidence of VTE in the ICI and chemotherapy cohorts and hazard ratios (HR) with 95% confidence intervals (CI) were calculated, using death as a competing risk. Subgroup analysis of low (0-1) and high (≥2) KS risk groups was performed.The study included 345 NSCLC patients receiving single agent ICI (n = 176) or chemotherapy (n = 169). The 6-month cumulative incidence of VTE was 7.1% in the chemotherapy cohort and 4.5% in the ICI cohort (HR for chemotherapy = 1.6, 95% CI 0.66-3.9). Among chemotherapy treated patients, the high-risk KS group had a trend toward a higher VTE incidence, compared with patients with a low-risk KS (HR 3.04, 95% CI 0.82-11.22). Among ICI-treated patients, the high-risk KS group had a trend toward a lower VTE incidence compared with the low-risk group (HR 0.17, 95% CI 0.02-1.36).VTE rates were higher among NSCLC patients treated with platinum-based chemotherapy than those treated with ICI alone, though the precision of the relative estimate is low. The KS did not identify high-risk ICI-treated patients, suggesting that an ICI-specific risk model is warranted.
Little is known regarding the anaplastic lymphoma kinase (ALK) tyrosine kinase inhibitor (TKI) efficacy and safety in the elderly.Consecutive patients (n = 53) with ALK-positive advanced non-small cell lung cancer treated with an ALK TKI were identified through internal databases of three cancer centers and divided into groups A (< 65 years old; n = 34) and B (≥65 years old; n = 19). Progression-free survival (PFS), ALK TKI safety and overall survival (OS) were assessed. Uni- and multivariate PFS and OS analyses were performed.Crizotinib, ceritinib, and alectinib were administered in 94 and 100%, 35 and 31%, 38 and 52% of patients in groups A and B, respectively. The median PFS (months) was 5.4 (95% CI, 3.4-12.4) and 5.6 (95% CI, 2.5-14.7) with crizotinib (log-rank 0.0009, p = 0.9), 4.7 (95% CI, 1.0-11.5) and 23.0 (95% CI, 0.8-27.7) with ceritinib (log-rank 0.44, p = 0.5), and 21.2 (95% CI, 1.2 to not reached, NR) and 5.6 (95% CI, 0.5 to NR) with alectinib (log-rank 0.53, p = 0.5) in groups A and B, respectively. The median OS (months) comprised 29.8 (95% CI, 21.0 to NR) and 25.1 (95% CI, 10.8-53.6) in groups A and B, respectively (log-rank 0.57, p = 0.4). Age affected neither PFS nor OS. 19 and 37%, 50 and 40%, and 0 and 0% of patients in groups A and B, treated with crizotinib, ceritinib, and alectinib, respectively, developed high-grade adverse events. The treatment discontinuation rate was 9 and 21%, 16 and 60%, 0 and 0% with crizotinib, ceritinib, and alectinib in groups A and B, respectively.In the elderly, crizotinib, ceritinib, and alectinib treatments are associated with similar efficacy but different safety profiles; alectinib is associated with a lower rate of high-grade adverse events and a lower treatment discontinuation rate.
Aim: The treatment paradigm of advanced non-small-cell lung cancer has recently changed with the introduction of immune checkpoint inhibitors (ICIs). It is common practice to continue treatment beyond progression (TBP) in selected cases. The aim of this study was to evaluate real life practice and outcomes related to TBP. Materials & methods: We retrospectively evaluated advanced non-small-cell lung cancer patients treated with ICI therapy and identified patients who were treated beyond progression. Results: Of 207 patients included in this analysis, 22% patients received TBP. A total of 36% achieved a clinical benefit. A total of 27% patients had a progression-free interval over 6 months after receiving TBP. Conclusion: A subset of patients who were treated beyond progression with ICI achieved a clinically meaningful response with durable disease control.